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Soil Physicochemical and Biological Properties of Paddy-Upland Rotation: A Review

机译:旱稻轮作的土壤理化生物学特性研究进展

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摘要

Paddy-upland rotation is an unavoidable cropping system for Asia to meet the increasing demand for food. The reduction in grain yields has increased the research interest on the soil properties of rice-based cropping systems. Paddy-upland rotation fields are unique from other wetland or upland soils, because they are associated with frequent cycling between wetting and drying under anaerobic and aerobic conditions; such rotations affect the soil C and N cycles, make the chemical speciation and biological effectiveness of soil nutrient elements varied with seasons, increase the diversity of soil organisms, and make the soil physical properties more difficult to analyze. Consequently, maintaining or improving soil quality at a desirable level has become a complicated issue. Therefore, fully understanding the soil characteristics of paddy-upland rotation is necessary for the sustainable development of the system. In this paper, we offer helpful insight into the effect of rice-upland combinations on the soil chemical, physical, and biological properties, which could provide guidance for reasonable cultivation management measures and contribute to the improvement of soil quality and crop yield.
机译:稻谷轮作是亚洲为满足日益增长的粮食需求而不可避免的种植体系。谷物单产的减少增加了对水稻种植系统土壤特性的研究兴趣。稻田-旱地旋转田地不同于其他湿地或旱地土壤,因为它们与厌氧和好氧条件下湿润和干燥之间的频繁循环相关。这种轮换影响土壤的碳和氮循环,使土壤养分元素的化学形态和生物学有效性随季节而变化,增加土壤生物的多样性,并使土壤物理性质更加难以分析。因此,将土壤质量维持或改善到理想水平已成为一个复杂的问题。因此,充分认识稻田轮作的土壤特征对于系统的可持续发展是必要的。在本文中,我们对水稻-旱地组合对土壤化学,物理和生物学特性的影响提供了有益的见解,可以为合理的耕作管理措施提供指导,并有助于改善土壤质量和作物产量。

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